Article ID Journal Published Year Pages File Type
10354101 Engineering Analysis with Boundary Elements 2005 9 Pages PDF
Abstract
This paper presents a meshless local boundary integral equation method (LBIEM) for dynamic analysis of an anti-plane crack in functionally graded materials (FGMs). Local boundary integral equations (LBIEs) are formulated in the Laplace-transform domain. The static fundamental solution for homogeneous elastic solids is used to derive the local boundary-domain integral equations, which are applied to small sub-domains covering the analyzed domain. For the sub-domains a circular shape is chosen, and their centers, the nodal points, correspond to the collocation points. The local boundary-domain integral equations are solved numerically in the Laplace-transform domain by a meshless method based on the moving least-squares (MLS) scheme. Time-domain solutions are obtained by using the Stehfest's inversion algorithm. Numerical examples are given to show the accuracy of the proposed meshless LBIEM.
Related Topics
Physical Sciences and Engineering Computer Science Computer Science Applications
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